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A study of the mechanism of laser welding defects in low thermal expansion superalloy GH909

机译:低热膨胀合金GH909的激光焊接缺陷机理研究

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摘要

In this paper, we describe experimental laser welding of low-thermal-expansion superalloy GH909. The main welding defects of GH909 by laser in the weld are liquation cracks and porosities, including hydrogen and carbon monoxide porosity. The forming mechanism of laser welding defects was investigated. This investigation was conducted using an optical microscope, scanning electron microscope, energy diffraction spectrum, X-ray diffractom-eter and other methodologies. The results demonstrated that porosities appearing in the central weld were related to incomplete removal of oxide film on the surface of the welding samples. The porosities produced by these bubbles were formed as a result of residual hydrogen or oxygenium in the weld. These elements failed to escape from the weld since laser welding has both a rapid welding speed and cooling rate. The emerging crack in the heat affected zone is a liquation crack and extends along the grain boundary as a result of composition segregation. Laves-Ni_2Ti phase with low melting point is a harmful phase, and the stress causes grain boundaries to liquefy, migrate and even crack. Removing the oxides on the surface of the samples before welding and carefully controlling technological parameters can reduce welding defects and improve formation of the GH909 alloy weld.
机译:在本文中,我们描述了低热膨胀高温合金GH909的实验激光焊接。 GH909焊接中激光的主要焊接缺陷是液化裂纹和气孔,包括氢气和一氧化碳气孔。研究了激光焊接缺陷的形成机理。使用光学显微镜,扫描电子显微镜,能量衍射谱,X射线衍射仪等方法进行了研究。结果表明,在中心焊缝中出现的孔隙与焊接样品表面氧化膜的去除不完全有关。这些气泡产生的孔隙是焊缝中残留的氢或氧的结果。这些元素无法从焊缝中逸出,因为激光焊具有快速的焊接速度和冷却速度。热影响区中出现的裂纹是液化裂纹,由于成分偏析而沿着晶界延伸。低熔点的Laves-Ni_2Ti相是有害相,应力使晶界液化,迁移甚至破裂。焊接前去除样品表面的氧化物并仔细控制工艺参数可以减少焊接缺陷并改善GH909合金焊缝的形成。

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